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The stability of Pt-M (M = first row transition metal) alloy catalysts and its effect on the activity in low temperature fuel cells A literature review and tests on a Pt-Co catalyst

机译:Pt-M(M =第一排过渡金属)合金催化剂的稳定性及其对低温燃料电池中活性的影响文献综述和Pt-Co催化剂的测试

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摘要

Carbon supported platinum metal alloy catalysts (Pt-M/C) are widely used in low temperature fuel cells. Pt alloyed with first-row transition elements is used as improved cathode material for low temperature fuel cells. A major challenge for the application of Pt-transition metal alloys in phosphoric acid (PAFC) and polymer electrolyte membrane (PEMFC) fuel cells is to improve the stability of these binary catalysts. Dissolution of the non-precious metal in the acid environment can give rise to a decrease of the activity of the catalysts and to a worsening of cell performance. The purpose of this paper is to provide a better insight into the stability of these Pt-M alloy catalysts in the PAFC and PEMFC environments and the effect of the dissolution of the non-precious metal on the electrocatalytic activity of these materials, in the light of the latest advances on this field. Additionally, the durability of a PtCo/C cathode catalyst was evaluated by a short test in a single PEM fuel cell.
机译:碳载铂金属合金催化剂(Pt-M / C)广泛用于低温燃料电池。与第一行过渡元素合金化的铂用作低温燃料电池的改良阴极材料。 Pt过渡金属合金在磷酸(PAFC)和聚合物电解质膜(PEMFC)燃料电池中的应用面临的主要挑战是提高这些二元催化剂的稳定性。非贵金属在酸性环境中的溶解会导致催化剂活性的降低和电池性能的恶化。本文的目的是为了更好地了解这些Pt-M合金催化剂在PAFC和PEMFC环境中的稳定性以及非贵金属的溶解对这些材料的电催化活性的影响。该领域的最新进展。另外,通过在单个PEM燃料电池中的短期测试来评估PtCo / C阴极催化剂的耐久性。

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